Ma Mingxuan, Chen Jiahuan, Liu Hongyu, Huang Zhonghua, Huang Fuhong, Li Quanliang, Xu Yuan
Department of Pharmacy, The Affiliated Hospital of Yangzhou University, Yangzhou University, Yangzhou, Jiangsu Province 225000, People's Republic of China.
Nanoscale. 2022 Sep 29;14(37):13405-13427. doi: 10.1039/d2nr01772e.
Chiral metal-organic frameworks (CMOFs) have the characteristics of framework structure diversity and functional tunability, and have important applications in the fields of chiral identification, separation of enantiomers and asymmetric catalysis. In recent years, the application of CMOFs has also been extended to other research fields, such as circularly polarized fluorescence and chiral ferroelectrics. Compared with achiral MOFs, the design of CMOFs only considers the modes of introduction of chirality, and also takes into account the crystallization and purification. Therefore, the synthesis and characterization of CMOFs face many difficult challenges. This review discusses three effective strategies for constructing CMOFs, including direct synthesis of chiral ligands, spontaneous resolution of achiral ligands or chiral template-induced synthesis, and post-synthetic chiralization of achiral MOFs. In addition, this review also discusses the recent application progress of CMOFs in chiral molecular recognition, enantiomer separation, asymmetric catalysis, circularly polarized fluorescence, and chiral ferroelectrics.
手性金属有机框架材料(CMOFs)具有框架结构多样和功能可调的特点,在手性识别、对映体分离及不对称催化等领域有着重要应用。近年来,CMOFs的应用还拓展到了其他研究领域,如圆偏振荧光和手性铁电体。与非手性金属有机框架材料(MOFs)相比,CMOFs的设计不仅要考虑手性引入方式,还要兼顾结晶和纯化。因此,CMOFs的合成与表征面临诸多艰巨挑战。本文综述了构建CMOFs的三种有效策略,包括直接合成手性配体、非手性配体的自发拆分或手性模板诱导合成以及非手性MOFs的后合成手性化。此外,本文还讨论了CMOFs在手性分子识别、对映体分离、不对称催化、圆偏振荧光和手性铁电体方面的最新应用进展。